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2020 e-Posters

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Microdrilling of Channels in Antiresonant Hollow-Core Fiber Using Femtosecond Laser Pulses
JTh2A.3
Microdrilling of Channels in Antiresonant Hollow-Core Fiber Using Femtosecond Laser Pulses

Pawel Koziol
Wroclaw University of Science and Techn.

  • Joint Posters
  • Laser Applications
  • Poster Only
Silicon wafer dicing technique
JTh2A.4
Silicon wafer dicing technique

Egidijus Vanagas
Evana Technologies, UAB

  • Joint Posters
  • Laser Applications
  • Poster Only
Femtosecond Laser-Induced Nanotopography in Silicon
JTh2A.5
Femtosecond Laser-Induced Nanotopography in Silicon

Sergey Romashevskiy
Joint Institute for High Temperatures

  • Joint Posters
  • Laser Applications
  • Poster Only
Study of marine sediments measured by the LIBS technique (Laser Induced Breakdown Spectroscopy)
JTh2A.6
Study of marine sediments measured by the LIBS technique (Laser Induced Breakdown Spectroscopy)

Modou Niang
Université Cheikh Anta Diop

  • Joint Posters
  • Laser Applications
  • Poster Only
Coherent Combining Building-Block
for kW Green CW Laser
JTh2A.7
Coherent Combining Building-Block for kW Green CW Laser

Yishai Albeck
Civan Advanced Technology

  • Joint Posters
  • Laser Applications
  • Poster Only
Beam Quality Enhancement in High Power mid-IR ZGP OPO Sources: a Focus on Thermal Lens Build-up
JTh2A.8
Beam Quality Enhancement in High Power mid-IR ZGP OPO Sources: a Focus on Thermal Lens Build-up

Marcin Piotrowski
French-German Research Institute (ISL)

  • Joint Posters
  • Advanced Solid State Lasers
  • Oral Only

High Peak Power, Non-diffractive and Micro-size Optical Bottles Generation in Bessel Beams
JTh2A.9
High Peak Power, Non-diffractive and Micro-size Optical Bottles Generation in Bessel Beams

Srinivasa Rao Allam
Physical Reseach Laboratory

  • Joint Posters
  • Advanced Solid State Lasers
  • Oral or Poster Acceptable
Optical Parametric Amplification at Critical Wavelength Degeneracy – a Way towards 100-PW Femtosecond Lasers
JTh2A.10
Optical Parametric Amplification at Critical Wavelength Degeneracy – a Way towards 100-PW Femtosecond Lasers

Razvan Dabu
Institute Nuclear Physics & Engineering

  • Joint Posters
  • Advanced Solid State Lasers
  • Oral Only
195-W Continuous Wave Laser Emission at 2.09 µm from a Tm3+,Ho3+-Codoped Single-Oscillator Monolithic Fiber Laser
JTh2A.11
195-W Continuous Wave Laser Emission at 2.09 µm from a Tm3+,Ho3+-Codoped Single-Oscillator Monolithic Fiber Laser

Nicolas Dalloz
French-german research Institute of Saint-Louis...

  • Joint Posters
  • Advanced Solid State Lasers
  • Oral or Poster Acceptable
Sub-ns, High Energy, Passively Q-switched Laser at 1.3 µm
JTh2A.12
Sub-ns, High Energy, Passively Q-switched Laser at 1.3 µm

Kaloyan Georgiev
Sofia University St. Kliment Ohridski

  • Joint Posters
  • Advanced Solid State Lasers
  • Oral or Poster Acceptable
Efficient Tm and Tm:Ho-doped Fibers for High-power Laser Operation at 2 and 2.1μm
JTh2A.13
Efficient Tm and Tm:Ho-doped Fibers for High-power Laser Operation at 2 and 2.1μm

Martin Nunez Velazquez
University of Southampton

  • Joint Posters
  • Advanced Solid State Lasers
  • Oral Only
SESAM-mode-locked Tm:KY3F10 Laser at 2340 nm
JTh2A.15
SESAM-mode-locked Tm:KY3F10 Laser at 2340 nm

Maciej Kowalczyk
Wroclaw University of Science and Technology

  • Joint Posters
  • Advanced Solid State Lasers
  • Poster Only
High-Power Faraday Isolator for Mid-IR Radiation Based on ZnSe Polycrystals
JTh2A.16
High-Power Faraday Isolator for Mid-IR Radiation Based on ZnSe Polycrystals

Evgeniy Mironov
Institute of Applied Physics of RAS

  • Joint Posters
  • Advanced Solid State Lasers
  • Oral or Poster Acceptable
Laser Self-Injection Locking to Nonlinear Microresonator with Thermal Effects
JTh2A.18
Laser Self-Injection Locking to Nonlinear Microresonator with Thermal Effects

Nikita Kondratyev
Russian Quantum Center

  • Joint Posters
  • Advanced Solid State Lasers
  • Oral or Poster Acceptable
Spectra of superradiant lasers
JTh2A.19
Spectra of superradiant lasers

Igor Protsenko
Lebedev physical institute

  • Joint Posters
  • Advanced Solid State Lasers
  • Oral or Poster Acceptable
A 3×1 Laser MMI Power Combiner Based On Slot-Waveguide Technology
JTh2A.20
A 3×1 Laser MMI Power Combiner Based On Slot-Waveguide Technology

Dror Malka
Holon Institute of Technology (HIT)

  • Joint Posters
  • Advanced Solid State Lasers
  • Oral Only
High Repetition Rate High Harmonic Generation with Ultra-high Photon Flux
JTh2A.21
High Repetition Rate High Harmonic Generation with Ultra-high Photon Flux

Steffen Hadrich
Active Fiber Systems GmbH

  • Joint Posters
  • Advanced Solid State Lasers
  • Oral or Poster Acceptable
Tunable source of infrared pulsesin gas-filled hollow core capillar
JTh2A.22
Tunable source of infrared pulsesin gas-filled hollow core capillar

Olivia Zurita Miranda
FEMTO-ST

  • Joint Posters
  • Advanced Solid State Lasers
  • Oral or Poster Acceptable
Laser linewidth narrowing via self-injection locking to a silicon microresonator in mid-IR
JTh2A.23
Laser linewidth narrowing via self-injection locking to a silicon microresonator in mid-IR

Artem Shitikov
faculty of physics MSU

  • Joint Posters
  • Advanced Solid State Lasers
  • Oral or Poster Acceptable
Directly pump controlled QCW fiber laser
JTh2A.25
Directly pump controlled QCW fiber laser

Vid Agrez
Faculty of Mechanical engineering UL

  • Joint Posters
  • Advanced Solid State Lasers
  • Oral Only
Kilowatt-class, High Duty Cycle, Passively Side-cooled 780 nm Diode Laser Stacks as Pumps for Pulsed MIR Lasers
JTh2A.26
Kilowatt-class, High Duty Cycle, Passively Side-cooled 780 nm Diode Laser Stacks as Pumps for Pulsed MIR Lasers

Marko Hubner
FBH

  • Joint Posters
  • Advanced Solid State Lasers
  • Oral or Poster Acceptable
High average and peak power laser amplifiers based on Yb:YAG thin rods and thin tapered rods
JTh2A.27
High average and peak power laser amplifiers based on Yb:YAG thin rods and thin tapered rods

Ivan Kuznetsov
Institute of Applied Physics of the RAS

  • Joint Posters
  • Advanced Solid State Lasers
  • Oral or Poster Acceptable
Femtosecond Pulse Generation Using Laser Written Zebra Patterned Graphene with Adjustable Loss
JTh2A.28
Femtosecond Pulse Generation Using Laser Written Zebra Patterned Graphene with Adjustable Loss

Yagiz Morova
Koç University

  • Joint Posters
  • Advanced Solid State Lasers
  • Oral or Poster Acceptable